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subject developed within an international framework, benefiting from European funding and computational resources. The interested candidate will ideally have good knowledge of the following methods
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of the facilities required to develop this PhD project: bacterial culture, rheology, surface charge measurements (zeta potential), thermal analysis, X-ray diffraction (XRD), infrared spectroscopy, mechanical behavior
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PhD project aims to develop novel engineered proteins with tailored cell-recognition and activity profiles, using a combination of: Computational protein design to reprogram receptor recognition and
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requirements. To overcome these limitations, the ANR-funded CALIFORCE3 project explores an innovative alternative: the development of a Membrane-Based Reciprocating Expander coupled with a Linear Alternator
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of ultrasound therapy and their control in real time. This team develops new methods for the control of ultrasonic cavitation, a phenomenon that enables the permeabilization of numerous biological membranes
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producing functionalized pyoverdine, which can then be conjugated to different molecules (for example, antibiotics) to develop targeted vectors or to explore new properties of the siderophore. In this context
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candidate will be responsible for the full range of activities related to the development, testing, and evaluation of the learning models. They will also receive support from LOA experts for the execution
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weapons of war are nerve agents (Sarin gas), blister agents (Yperite), or suffocants (phosgene). Civilian or military personal protective equipment (PPE) developed until now generally offers passive
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whole at a collective level. The development of non-technical skills remains an integral part of the core competencies students are expected to acquire during their university studies. In this context
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expertise in structural studies of thin-film materials using transmission electron microscopy. The team is also developing original methods for polymer orientation using high-temperature mechanical brushing